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A solid phase extraction-based platform for rapid phosphoproteomic analysis.

机译:基于固相萃取的平台,用于快速磷酸化蛋白质组学分析。

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摘要

Protein phosphorylation is among the most common and intensely studied post-translational protein modification. It plays crucial roles in virtually all cellular processes and has been implicated in numerous human diseases, including cancer. Traditional biochemical and genetic methods for identifying and monitoring sites of phosphorylation are laborious and slow and in recent years have largely been replaced by mass spectrometric analysis. Improved methods for phosphopeptide enrichment coupled with faster and more sensitive mass spectrometers have led to an explosion in the size of phosphoproteomic datasets. However, wider application of these methods is limited by equipment costs and the resultant high demand for instrument time as well as by a technology gap between biologists and mass spectrometrists. Here we describe a modified two-step enrichment strategy that employs lysC digestion and step elution from self-packed strong cation exchange (SCX) solid phase extraction (SPE) columns followed by immobilized metal ion affinity chromatography (IMAC) and LC-MS/MS analysis using a hybrid LTQ Orbitrap Velos mass spectrometer. The SCX procedure does not require an HPLC system, demands little expertise, and because multiple samples can be processed in parallel, can provide a large savings of time and labor. We demonstrate this method in conjunction with stable isotope labeling to quantitate peptides harboring >8000 unique phosphorylation sites in yeast in 12h of instrument analysis time and examine the impact of enzyme choice and instrument platform.
机译:蛋白质磷酸化是翻译后蛋白质修饰中最常见和最深入的研究之一。它在几乎所有细胞过程中都起着至关重要的作用,并且与许多人类疾病有关,包括癌症。用于鉴定和监测磷酸化位点的传统生化和遗传方法费力且缓慢,并且近年来已被质谱分析所取代。磷酸肽富集的改进方法与更快,更灵敏的质谱仪相结合,导致磷酸化蛋白质组学数据集的规模激增。但是,这些方法的广泛应用受到设备成本和对仪器时间的高要求以及生物学家和质谱师之间的技术差距的限制。在这里,我们描述了一种改良的两步富集策略,该策略采用lysC消化和从自装强阳离子交换(SCX)固相萃取(SPE)色谱柱中进行步洗脱,然后进行固定化的金属离子亲和色谱(IMAC)和LC-MS / MS使用混合LTQ Orbitrap Velos质谱仪进行分析。 SCX程序不需要HPLC系统,只需要很少的专业知识,并且由于可以并行处理多个样品,因此可以节省大量时间和人力。我们证明了该方法与稳定的同位素标记相结合,可在仪器分析时间的12小时内对酵母中具有> 8000个独特磷酸化位点的肽进行定量,并考察酶选择和仪器平台的影响。

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